• 제목/요약/키워드: Large Deformation Finite Element Method

검색결과 290건 처리시간 0.025초

마멸에 의한 온간단조의 금형수명 예측에 관한 연구(II) -금형 마멸 모델의 적용- (A Study on Predictin of Die Life of Warm Forging by Wear(II) -Application of Suggested Die Wear Model-)

  • 강종훈;박은우;제진수;강성우
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 1998년도 춘계학술대회논문집
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    • pp.94-99
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    • 1998
  • In bulk metal forming processes prediction of tool life is very important for saving production cost and achieving good material properties. Generally the service life of tools in metal forming process is limited to a large extent by wear, fracture and plastic deformation of tools. In case of hot and warm forging processes, tool life depends on wear over 70%. In this study finite element analyses are applied to warm forging and hot forging by adopting suggested wear model. By comparision of simulation and real profile of die, suggested model is verified

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입자법을 이용한 토사의 대변형 해석법 개발 (Development of Numerical Method for Large Deformation of Soil Using Particle Method)

  • 박성식;이도현;권민호
    • 한국지반공학회논문집
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    • 제29권12호
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    • pp.35-44
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    • 2013
  • 본 연구에서는 토사 유동과 같은 대변형 해석을 위해 기존 유한요소법이나 유한차분법과 달리 격자를 사용하지 않는 입자법을 사용하였으며, 입자법은 구배, 발산, 라플라시안과 같은 미분연산자에 대응하는 입자간 상호작용모델을 이용하여 연속체의 지배방정식을 이산화하였다. 외부 하중이나 함수비 증가에 따라 고체에서 유체 상태로 변하는 흙의 3차원 대변형 거동을 해석하기 위해 기존 입자법에 흙의 파괴상태를 고려할 수 있는 Mohr-Coulomb 파괴기준을 도입하였으며, 흙의 파괴 이전의 항복이나 경화현상으로 인한 대변형은 흙을 점성 유체로 가정하여 해석하였다. 개발된 입자법은 먼저 구속압이 작용하지 않고 강도가 0인 모래기둥 붕괴실험 결과를 이용하여 검증한 다음, 점착력을 가지고 자립이 가능한 점토기둥 붕괴실험을 실시하여 흙의 항복이나 파괴로 인한 대변형을 시뮬레이션하였다. 개발된 입자법은 모래와 점토의 3차원 대변형 거동을 유사하게 잘 예측하였으며, 파괴 이전에 발생하는 흙의 항복으로 인한 소성변형에 따른 흙기둥 내의 수직 및 전단응력 변화도 계산할 수 있었다.

홀로그래픽 산섭법을 이용한 미소변형 측정법 (The Measurement Method of Small Deformation by using Holographic Interferometry)

  • 강영준;문상준;최장섭
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1993년도 추계학술대회 논문집
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    • pp.273-278
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    • 1993
  • Conventional measurement methods for non-destructive testing(NDT) in nuclear power plants other industrial plants have been performed as the methods of contact with objects to be inspect, but those methods have been taken relatively much time to be inspected. Holographic interferometry which is a non-contact optical measurement method using a coherent light can overcome these demerit, and also has an advantage that the quantitative measurement of small deformation for large areas can be accomplished at a time with high precision. In this paper the comparisons of the experimental results from holographic interferometry with those form the finite element method(FEM) and the analytical solutions of elastic equation are discussed.

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Wave Response Analysis and Future Direction of Mega-Float

  • Park, Sung-Hyeon
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2001년도 Proceeding of KIN-CIN Joint Symposium 2001 on Satellite Navigation/AIS, lntelligence , Computer Based Marine Simulation System and VDR
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    • pp.153-168
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    • 2001
  • In the country where the population concentrates in the metropolis with the narrow land, development of th ocean space is necessary. Recently, mega-float offshore structure is studied as one of the effective utilization of the ocean space. And very large floating structure are now being considered for various applications such as floating airports, offshore cities and so on. This very large structure is relatively flexible compared with real floating structures like large ships. when we estimate dynamic responses of these structures in waves, the elastic deformation is important, because vertical dimension is small compared with horizontal. And it is necessary to examine the effect of ocean wave eternal force received from the natural environment. In this study, the mat-type large floating structure is made to be analytical model. And the analysis of the dynamic response as it receives regular wave is studied. The finite element method is used in the analysis of structure part of this model. And the analysis is carried out using the boundary element method in the fluid part. In order to know the characteristics of the dynamic response of the large floating structures, effects of wavelength, bending rigidity of the structure, water depth, and wave direction on dynamic response of the floating structure are studied by use of numerical calculation.

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Combined multi-predict-correct iterative method for interaction between pulsatile flow and large deformation structure

  • Wang, Wenquan;Zhang, Li-Xiang;Yan, Yan;Guo, Yakun
    • Coupled systems mechanics
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    • 제1권4호
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    • pp.361-379
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    • 2012
  • This paper presents a fully coupled three-dimensional solver for the analysis of interaction between pulsatile flow and large deformation structure. A partitioned time marching algorithm is employed for the solution of the time dependent coupled discretised problem, enabling the use of highly developed, robust and well-tested solvers for each field. Conservative transfer of information at the fluid-structure interface is combined with an effective multi-predict-correct iterative scheme to enable implicit coupling of the interacting fields at each time increment. The three-dimensional unsteady incompressible fluid is solved using a powerful implicit time stepping technique and an ALE formulation for moving boundaries with second-order time accurate is used. A full spectrum of total variational diminishing (TVD) schemes in unstructured grids is allowed implementation for the advection terms and finite element shape functions are used to evaluate the solution and its variation within mesh elements. A finite element dynamic analysis of the highly deformable structure is carried out with a numerical strategy combining the implicit Newmark time integration algorithm with a Newton-Raphson second-order optimisation method. The proposed model is used to predict the wave flow fields of a particular flow-induced vibrational phenomenon, and comparison of the numerical results with available experimental data validates the methodology and assesses its accuracy. Another test case about three-dimensional biomedical model with pulsatile inflow is presented to benchmark the algorithm and to demonstrate the potential applications of this method.

탄소성 내연적 유한요소법을 이용한 평면 이방성 박판의 성형공정해석 (Elastic-Plastic Implicit Finite Element Method Considering Planar Anisotropy for Complicated Sheet Metal Forming Processes)

  • 윤정환;김종봉;양동열;정관수
    • 소성∙가공
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    • 제7권3호
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    • pp.233-245
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    • 1998
  • A new approach has been proposed for the incremental analysis of the nonsteady state large deformation of planar anisotropic elastic-plastic sheet forming. A mathematical brief review of a constitutive law for the incremental deformation theory has been presented from flow theory using the minimum plastic work path for elastic-plastic material. Since the material embedded coordinate system(Lagrangian quantity) is used in the proposed theory the stress integration procedure is completely objective. A new return mapping algorithm has been also developed from the general midpoint rule so as to achieve numerically large strain increment by successive control of yield function residuals. Some numerical tests for the return mapping algorithm were performed using Barlat's six component anisotropic stress potential. Performance of the proposed algorithm was shown to be good and stable for a large strain increment, For planar anisotropic sheet forming updating algorithm of planar anisotropic axes has been newly proposed. In order to show the effectiveness and validity of the present formulation earing simulation for a cylindrical cup drawing and front fender stamping analysis are performed. From the results it has been shown that the present formulation can provide a good basis for analysis for analysis of elastic-plastic sheet metal forming processes.

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스프링요소를 이용한 풍력발전기용 슬루잉 베어링의 유한요소해석 (Finite Element Analysis of Slewing Bearings for Wind Turbines Using Spring Elements)

  • 한기봉;강종훈
    • 한국융합학회논문지
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    • 제11권11호
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    • pp.239-247
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    • 2020
  • 본 연구는 풍력발전기용 베어링의 응력저감을 위한 설계와 검증에 관한 것이다. 일반적인 4점 접촉 볼베어링의 구조를 가지고 있는 슬루잉 베어링은 큰 모멘트 하중이 작용하면 접촉점이 레이스웨이 끝단부로 이동하여 국부적인 응력상승 문제가 발생한다. 본 연구에서는 이러한 접점 이동을 줄이기 위한 베어링을 설계하였다. 전통적인 볼베어링과 새로인 설계된 베어링의 극한하중 하에서의 변형거동을 볼을 스프링요소로 치환하여 유한요소해석을 통하여 계산하였다. 볼과 레이스웨이의 접촉응력은 변형거동 해석결과를 경계조건으로 입력하여 유한요소해석으로 계산하였다. 베어링 구조에 따른 접촉부 응력 비교를 통하여 베어링의 응력해석 방법의 효용성을 검증하였다.

수직 등분포 하중을 받는 고정 지점 포물선 아치 리브의 면내 좌굴 강도 (In-plane buckling strength of fixed arch ribs subjected vertical distributed loading)

  • 문지호;윤기용;김성훈;이학은
    • 한국강구조학회 논문집
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    • 제17권4호통권77호
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    • pp.439-447
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    • 2005
  • 아치 리브가 수직 하중을 받는 경우, 예기치 않게 면내 방향으로 좌굴이 발생될 수 있다. 따라서 설계자는 아치 리브의 면내 안정성을 설계 시 반드시 고려해야 한다. 본 논문에서는 유한 요소 해석을 통하여 수직 등분포 하중을 받는 고정지점 포물선 아치 리브의 탄성, 비탄성 면내 좌굴 강도를 연구하였다. 본 연구에서 사용된 아치 리브의 스냅-스루 현상과 비탄성 거동을 모사하기 위한 유한 요소 해석 모델은 기존 연구자들의 실험 결과를 이용하여 검증되었다. 또한 아치 리브의 면내 극한 강도를 결정하기 위하여 대변형과 재료의 비탄성, 잔류응력을 고려하였으며, 마지막으로 유한 요소 해석의 결과를 EC3 설계기준과 비교, 분석 하였다.

유체-구조 반복해석법에 의한 유연 프로펠러의 설계 알고리듬 개발 (Design Algorithm of Flexible Propeller by Fluid-Structure Interactive Analysis)

  • 장현길;노인식;홍창호;이창섭
    • 대한조선학회논문집
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    • 제49권6호
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    • pp.528-533
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    • 2012
  • Flexible composite propellers are subject to large deformation under heavy loading, and hence the hydrodynamic performance of deformed propeller might deviate from that of the metallic propeller under negligible deformation. To design the flexible propeller, it is therefore necessary to be able to evaluate the structural response of the blades to the hydrodynamic loadings, and then the influence of the blade deformation upon the hydrodynamic loadings. We use the lifting-surface-theory-based propeller analysis and design codes in solving the hydrodynamic problem, and the finite-element-method program formulated with 20-node iso-parametric solid elements for the analysis of the structural response. The two different hydrodynamic and structural programs are arranged to communicate through the carefully-designed interface scheme which leads to the derivation of the geometric parameters such as the pitch, the rake and the skew distributions common to both programs. The design of flexible propellers, suitable for manufacturing, is shown to perform the required thrust performance when deformed in operation. Sample design shows the fast iteration scheme and the robustness of the design procedure of the flexible propellers.

A new hierarchic degenerated shell element for geometrically non-linear analysis of composite laminated square and skew plates

  • Woo, Kwang-Sung;Park, Jin-Hwan;Hong, Chong-Hyun
    • Structural Engineering and Mechanics
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    • 제17권6호
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    • pp.751-766
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    • 2004
  • This paper extends the use of the hierarchic degenerated shell element to geometric non-linear analysis of composite laminated skew plates by the p-version of the finite element method. For the geometric non-linear analysis, the total Lagrangian formulation is adopted with moderately large displacement and small strain being accounted for in the sense of von Karman hypothesis. The present model is based on equivalent-single layer laminate theory with the first order shear deformation including a shear correction factor of 5/6. The integrals of Legendre polynomials are used for shape functions with p-level varying from 1 to 10. A wide variety of linear and non-linear results obtained by the p-version finite element model are presented for the laminated skew plates as well as laminated square plates. A numerical analysis is made to illustrate the influence of the geometric non-linear effect on the transverse deflections and the stresses with respect to width/depth ratio (a/h), skew angle (${\beta}$), and stacking sequence of layers. The present results are in good agreement with the results in literatures.